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A recombinant fungal defensin-like peptide-P2 combats Streptococcus dysgalactiae and biofilms
Qingjuan Zhang1,2,3,4, Na Yang1,2, Ruoyu Mao1,2
1Team of AMP & Alternatives to Antibiotics, Gene Engineering Laboratory, Feed Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Abstract:
Streptococcus dysgalactiae, considered one of the main pathogens that causes bovine mastitis, is a serious threat to humans and animals. However, the excessive use of antibiotics and the characteristic of S. dysgalactiae forming biofilms in mastitic teat canal have serious clinical implications. In this study, in vivo and in vitro multiple mechanisms of action of P2, a mutant of fungal defensin plectasin, against S. dysgalactiae were systematically and comprehensively investigated for the first time. P2 showed potent antibacterial activity against S. dysgalactiae (minimum inhibitory concentration, MIC = 0.23-0.46 μM) and rapid bactericidal action by 3.0 lg units reduction in 2-4 h. No resistant mutants appeared after 30-d serial passage of S. dysgalactiae in the presence of P2. The results of electron microscopy and flow cytometer showed that P2 induced membrane damage of S. dysgalactiae, causing the leakage of cellular content and eventually cell death. Besides, P2 effectively inhibited early biofilm formation, eradicated mature biofilms, and killed 99.9% persisters which were resistant to 100 × MIC vancomycin; and confocal laser scanning microscopy (CLSM) also revealed the potent antibacterial and antibiofilm activity of P2 (the thickness of biofilm reduced from 18.82 to 7.94 μm). The in vivo therapeutic effect of P2 in mouse mastitis model showed that it decreased the number of mammary bacteria and alleviated breast inflammation by regulating cytokines and inhibiting bacterial proliferation, which were superior to vancomycin. These data indicated that P2 maybe a potential candidate peptide for mastitis treatment of S. dysgalactiae infections. KEY POINTS: •P2 showed potential in vitro antibacterial characteristics towards S. dysgalactiae. •P2 eradicated biofilms, killed persisters, and induced cell death of S. dysgalactiae. •P2 could effectively protect mice from S. dysgalactiae infection in gland.
Insights
P2, a fungal defensin mutant, effectively combats Streptococcus dysgalactiae, a bovine mastitis pathogen. It demonstrates potent antibacterial, antibiofilm, and anti-persister activity, offering a promising alternative for mastitis treatment.
Area of Science:
- Microbiology
- Infectious Diseases
- Biotechnology
Background:
- Streptococcus dysgalactiae is a primary cause of bovine mastitis, posing significant risks to animal and human health.
- Antibiotic resistance and biofilm formation by S. dysgalactiae complicate clinical mastitis treatment.
- Fungal defensins offer novel antimicrobial strategies against bacterial pathogens.
Purpose of the Study:
- To investigate the in vitro and in vivo mechanisms of action of P2, a mutant fungal defensin plectasin, against S. dysgalactiae.
- To evaluate P2's efficacy in treating S. dysgalactiae-induced mastitis in a mouse model.
Main Methods:
- In vitro assays determined P2's minimum inhibitory concentration (MIC) and bactericidal kinetics.
- Electron microscopy and flow cytometry assessed P2's effect on bacterial membrane integrity.
- Biofilm inhibition, eradication, and persister cell killing assays were performed.
- A mouse mastitis model evaluated P2's in vivo therapeutic effects and cytokine regulation.
Main Results:
- P2 exhibited potent antibacterial activity (MIC = 0.23-0.46 μM) and rapid bactericidal effects against S. dysgalactiae.
- No resistance developed after 30-day serial passage.
- P2 induced membrane damage, cell lysis, inhibited biofilm formation, eradicated mature biofilms, and killed vancomycin-resistant persisters.
- In vivo, P2 reduced mammary bacterial load and inflammation, outperforming vancomycin.
Conclusions:
- P2 demonstrates significant in vitro and in vivo efficacy against S. dysgalactiae.
- P2's multifaceted action, including membrane damage, antibiofilm, and anti-persister activity, makes it a strong candidate.
- P2 represents a potential novel therapeutic peptide for treating bovine mastitis caused by S. dysgalactiae.
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